213 p.Chemically ordered Ll0 (CuAu-I type structure) FePt films with an fct (face centered tetragonal) structure possess a high Ku (magnetic anisotropy constant) value (~ 6-10xl07 erg/cm3), which allows them to have very small thermally stable magnetic grains (~2.6nm) and makes them the most promising candidates for ultra-high areal density recording media. Usually, as-deposited FePt alloy thin films are a disordered fee (facecentered- cubic) phase and tend to show a (111) texture. A high temperature (above 550°C) post annealing is needed to form an ordered Ll0 phase. In order to develop FePt films as perpendicular magnetic recording media, the Ll0 FePt ordering temperature has to be reduced and the easy axis of the films should be perpendi...
The increasing demand for nearline storage capacity in data centers calls for a continued enhancemen...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
An experimental approach for obtaining perpendicular FePt-SiOx thin films with a large height to dia...
Recently, high magnetic anisotropy materials have received much attention to meet the demands of app...
FePt with ordered L10 structure is a promising material for high-density magnetic recording media be...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
[[abstract]]Twenty-nanometer FePt films with 40% Fe content were deposited on MgO substrates at 300 ...
Hard-magnetic L10 phase FePt has been demonstrated as a promising candidate for future nanomagnetic ...
Aiming at development of ultra-high density magnetic recording media, nanostructured Fe–Pt perpendic...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
Highly ordered L10 FePt-oxide thin films with small grains were prepared by using a RuAl layer as a ...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
The increasing demand for nearline storage capacity in data centers calls for a continued enhancemen...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
An experimental approach for obtaining perpendicular FePt-SiOx thin films with a large height to dia...
Recently, high magnetic anisotropy materials have received much attention to meet the demands of app...
FePt with ordered L10 structure is a promising material for high-density magnetic recording media be...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
Achieving magnetic recording densities in excess of 1Tbit/in2 requires not only perpendicular media ...
[[abstract]]Twenty-nanometer FePt films with 40% Fe content were deposited on MgO substrates at 300 ...
Hard-magnetic L10 phase FePt has been demonstrated as a promising candidate for future nanomagnetic ...
Aiming at development of ultra-high density magnetic recording media, nanostructured Fe–Pt perpendic...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
Highly ordered L10 FePt-oxide thin films with small grains were prepared by using a RuAl layer as a ...
Chemically ordered FePt is one of the most promising materials to reach the ultimate limitations in ...
The increasing demand for nearline storage capacity in data centers calls for a continued enhancemen...
This paper presents a detailed study of structure, morphology, and magnetic properties in FePt thinf...
An experimental approach for obtaining perpendicular FePt-SiOx thin films with a large height to dia...